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Persistent spectral hole-burning study on some organic and inorganic materials

机译:某些有机和无机材料的持久光谱烧孔研究

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Abstract: Persistent spectral hole burning (PSHB) was performed for several porphyrin molecules imbedded in polymer hosts and rare-earth ion Sm$+2$PLU$/ doped in BaFCl$-0.5$/Br$- 0.5$/ matrix. Power saturation and broadening effects for hole depth and width were observed. The dynamical process of hole formation was measured and explanation by population rate equations was given. Quantum efficiency of photochemical hole burning was investigated. For BaFCl$-0.5$/Br$-0.5$/:Sm$+2$PLU$/ the capacity of data storage was estimated according to the result of multiple hole burning. !5
机译:摘要:对嵌入聚合物主体中的几种卟啉分子和掺杂在BaFCl $ -0.5 $ / Br $ -0.5 $ /基质中的稀土离子Sm $ + 2 $ PLU $ /进行了持久光谱空穴燃烧(PSHB)。观察到功率饱和和扩孔效应对孔的深度和宽度的影响。测量了孔形成的动力学过程,并给出了人口率方程式的解释。研究了光化学空穴燃烧的量子效率。对于BaFCl $ -0.5 $ / Br $ -0.5 $ /:Sm $ + 2 $ PLU $ /,数据存储容量是根据多孔刻录的结果估算的。 !5

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